2017IEEE Aerospace and Electronic Systems MagazineRequires access

Performance prediction for design of a network of skywave over-the-horizon radars

David B. Francis, M. A. Cervera, Gordon J. Frazer

Open publisher page 20 citations

Abstract

Skywave over-the-horizon radar (OTHR) is long-range beyond horizon radar technology that is presently employed by several nations for wide-area surveillance of aircraft and maritime vessels [1]. This radar class uses propagation via the ionosphere [2] to achieve radar energy propagation to and from the target region. The ionosphere is driven by varying solar interaction with the Earth, and this variability significantly influences the operational performance of a skywave OTHR. Considerable care in selecting radar-operating parameters is required to achieve the best performance.

About this research paper

What this paper is about

Skywave over-the-horizon radar (OTHR) is long-range beyond horizon radar technology that is presently employed by several nations for wide-area surveillance of aircraft and maritime vessels [1]. This radar class uses propagation via the ionosphere [2] to achieve radar energy propagation to and from the target region. The ionosphere is driven by varying solar interaction with the Earth, and this variability significantly influences the operational performance of a skywave OTHR. Considerable care in selecting radar-operating parameters is required to achieve the best performance.

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Available abstract

Skywave over-the-horizon radar (OTHR) is long-range beyond horizon radar technology that is presently employed by several nations for wide-area surveillance of aircraft and maritime vessels [1]. This radar class uses propagation via the ionosphere [2] to achieve radar energy propagation to and from the target region. The ionosphere is driven by varying solar interaction with the Earth, and this variability significantly influences the operational performance of a skywave OTHR. Considerable care in selecting radar-operating parameters is required to achieve the best performance.

Key concepts: Skywave, Over-the-horizon radar, Radar, Ionosphere, Remote sensing, Computer science, Range (aeronautics), Meteorology

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